A frame structure of an adjustable infrared touch frame

By using a modular design and segmented wiring structure for the infrared touch frame, the problems of poor adaptability and complex maintenance of traditional infrared touch frames are solved, enabling flexible adaptation and convenient maintenance of the equipment.

CN224366414UActive Publication Date: 2026-06-16SHENZHEN MAIKE INTELLIGENT CONTROL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN MAIKE INTELLIGENT CONTROL TECHNOLOGY CO LTD
Filing Date
2025-08-07
Publication Date
2026-06-16

AI Technical Summary

Technical Problem

Traditional infrared touch frames cannot flexibly adapt to different device models, have complex wiring and high maintenance costs, and affect user experience.

Method used

The modular frame structure includes a sliding TV bracket and segmented BTB flexible connection cables. Conductive connections are achieved through adapter plates, and the components are assembled and fixed using plugs and connecting shells.

Benefits of technology

It improves device compatibility, simplifies the wiring process, reduces maintenance difficulty and cost, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a frame structure of adjustable infrared touch frame, including frame main part and a plurality of television support hanger, frame main part and television support hanger are connected through sliding structure between, and then realize the connection of television support hanger, frame main part includes the vertical rod of both ends and the cross bar of both sides, and both ends in the inside of vertical rod and cross bar all are provided with BTB flexible docking line, and BTB flexible docking line and BTB flexible docking line between are connected through the adapter plate of electricity, the utility model discloses discard the "C character shape " wiring scheme of running through the whole frame inside, through setting up BTB flexible docking line in the inside of vertical rod and cross bar, and the electricity connection of adapter plate is realized between adjacent BTB flexible docking line, makes the wiring process by complicated whole threading become sectional connection.
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Description

Technical Field

[0001] This utility model relates to a frame structure, specifically to a frame structure for an adjustable infrared touch frame. Background Technology

[0002] Traditional infrared touch frames typically lack a support frame, consisting only of a fixed structure. This fixed design limits their adaptability to various device models, restricting their application range and usage scenarios. Whether for large or small devices, a specific frame is required for support, increasing production costs and causing inconvenience for users.

[0003] Secondly, the traditional layout arranges the wiring cables in a C-shape inside the frame, which is particularly cumbersome in practice. Due to the considerable length of the frame itself, the wiring process becomes extremely complex, requiring significant time and effort. More seriously, if these wiring cables are damaged, the complexity of the layout often prevents individual replacements; the entire frame's wiring must be replaced, increasing maintenance costs and significantly reducing the overall reliability of the equipment. This design flaw undoubtedly negatively impacts the user experience. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a frame structure for an adjustable infrared touch frame, so as to solve the problems existing in the background art.

[0005] The adjustable infrared touch frame of this utility model is achieved through the following technical solution, including the frame body and multiple TV bracket mounts.

[0006] The frame body and the TV bracket are connected by a sliding structure, thereby achieving the connection of the TV bracket.

[0007] The main frame includes longitudinal bars at both ends and transverse bars on both sides. Three BTB flexible butt wires are respectively installed inside the longitudinal bars and transverse bars. The BTB flexible butt wires are connected to each other through an adapter plate to form a C-shaped structure, thereby achieving the effect of conductive connection.

[0008] As a preferred technical solution, the sliding structure includes the horizontal bar above the main frame and the sliding grooves on the vertical bars on both sides, as well as the slider on the TV bracket mount.

[0009] The slider is slidably disposed in the groove and positioned by screws, thus making it suitable for different television sets.

[0010] In order to assemble the main frame, this embodiment also includes a connecting block, and both ends of the connecting block are provided with inserts. The inserts are respectively inserted into the grooves of the horizontal bar and the vertical bar, thereby realizing the assembly and fixation between the vertical bar and the horizontal bar. A connecting shell is provided at the notch of the vertical bar and the horizontal bar, and the notch of the vertical bar and the horizontal bar is covered by the connecting shell, thereby forming a whole.

[0011] As a preferred technical solution, the longitudinal and transverse members of the frame body are made of profile tubes or plastic tubes, the connecting blocks are made of zinc alloy, and the connecting shells are made of plastic.

[0012] The beneficial effects of this utility model are:

[0013] This invention abandons the "C-shaped" wiring scheme that runs through the entire frame. Instead, it sets up BTB flexible butt wires inside the vertical and horizontal bars, and connects adjacent BTB flexible butt wires with an adapter plate to achieve conductive connection. This changes the wiring process from complex whole-piece wiring to segmented connection. When a section of BTB flexible butt wire is damaged, the damaged section can be disassembled and replaced separately without replacing all the wiring inside the entire frame. This greatly reduces maintenance costs and difficulty.

[0014] This invention improves the frame's adaptability to equipment of different sizes by using a sliding bracket, thus enhancing its versatility and flexibility. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0017] Figure 2 This is a schematic diagram of the structure of this utility model from another perspective;

[0018] Figure 3 This is a schematic diagram of the exploded structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the rear structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the BTB flexible butt wire connection of this utility model.

[0021] 1. Frame body; 2. TV bracket mount; 3. Vertical bar; 4. Horizontal bar; 5. BTB flexible connection cable; 6. Connecting block; 7. Connecting shell; 8. Slide groove; 9. Slider; 11. Adapter plate; 12. Insert block. Detailed Implementation

[0022] All features disclosed in this specification, or all steps in all disclosed methods or processes, may be combined in any way, except for mutually exclusive features and / or steps.

[0023] like Figures 1-5 As shown, this utility model provides a frame structure for an adjustable infrared touch frame. It optimizes the wiring structure and bracket connection method through modular design, which improves adaptability and maintenance convenience while ensuring structural stability, and has broad practical application value.

[0024] The adjustable infrared touch frame mainly includes a frame body 1 and multiple TV bracket mounts 2. The frame body 1 and the TV bracket mounts 2 are connected by a sliding structure. Users can adjust the position according to the size of the TV or display device to be installed, so as to realize the quick installation and matching of the infrared touch frame on various terminal devices, thereby enhancing the versatility of the system.

[0025] The sliding structure specifically comprises a horizontal bar 4 located above the main frame 1 and sliding grooves 8 on the two side vertical bars 3, as well as sliders 9 correspondingly mounted on the TV bracket mounts 2. The sliders 9 can slide linearly within the sliding grooves 8 and are fixed in place by screw locking devices, ensuring they remain stable in their designated positions. In practical applications, the distance between the TV bracket mounts 2 can be easily adjusted according to the dimensions of the rear mounting points on different TVs or interactive devices, effectively solving the problem of existing infrared touch frames being unable to match multiple device models.

[0026] The main frame 1 includes vertical rods 3 at both ends and horizontal rods 4 on the upper and lower sides. The vertical rods 3 and horizontal rods 4 are assembled to form a closed rectangular frame structure for supporting and fixing the infrared touch module and related circuitry. Multiple BTB flexible connection wires 5 are provided inside the vertical rods 3 and horizontal rods 4, typically three, to achieve electrical connection between the infrared transmitter and receiver.

[0027] Instead of using the traditional full-loop connection method, the BTB flexible pair wires 5 are laid out in segments. Adjacent BTB flexible pair wires 5 are electrically connected through adapter plates 11 located at the connection points, forming a partially closed "C-shaped" circuit structure. This segmented connection scheme replaces the traditional whole-loop cabling method, significantly reducing the complexity of cable laying and facilitating installation and subsequent maintenance. Especially in the event of damage to a segment of the BTB flexible pair wire 5, maintenance personnel only need to disassemble and replace that segment of the pair wire, without having to replace the entire internal wiring of the frame, greatly saving maintenance costs and improving maintenance efficiency.

[0028] To achieve the assembly and fixation between the longitudinal bar 3 and the transverse bar 4, a connecting block 6 is introduced in this embodiment. Each end of the connecting block 6 is provided with an insert 12, which matches the sliding groove 8 on the transverse bar 4 and the longitudinal bar 3. The mechanical connection and positioning between the longitudinal bar 3 and the transverse bar 4 are completed by inserting the insert 12 into the corresponding sliding groove 8. This connection method has the advantages of simple operation and quick assembly / disassembly, meeting the needs of large-scale installation, production, and subsequent adjustments.

[0029] Furthermore, in order to enhance the connection strength, improve the overall appearance and close the opening area of ​​the connection part, a connecting shell 7 is provided on the outside of the docking notch of the longitudinal bar 3 and the transverse bar 4. The connecting shell 7 is covered at the corresponding notch, and the seam of the connecting block 6 and the insert block 12 is covered by the outer cover structure, so that the frame presents an integrated and aesthetically pleasing structure without exposed gaps, while also protecting the internal circuits and structural connection parts.

[0030] Regarding the specific material selection, the longitudinal bars 3 and transverse bars 4 of the frame body 1 can be made of aluminum alloy profiles or engineering plastic tubing. Aluminum profiles have good bending strength and structural stability, making them suitable for large-size touch frame scenarios, while plastic tubing offers advantages in terms of lightness and low cost, making it suitable for small and medium-sized devices. The connecting block 6 is made of zinc alloy die-casting, possessing high strength and good dimensional accuracy, ensuring reliable and secure connections between the longitudinal and transverse bars. The connecting shell 7 is made of injection-molded plastic, offering good adaptability and appearance consistency, enabling efficient mass production and application to infrared touch frame products of different structural specifications.

[0031] This invention utilizes a sliding structure formed by slider 9 and groove 8 to achieve flexible adjustment of the TV bracket mount 2 on the frame body 1, enhancing the device size adaptability. The segmented wiring BTB flexible butt-connector wire 5 and adapter plate 11 effectively replace the traditional integrated C-shaped wiring method, greatly simplifying the wiring installation and maintenance process. The assembly connection mechanism constructed by insert 12 and connecting block 6, along with the decorative and sealing function of the external connecting shell 7, forms a stable, aesthetically pleasing, and easy-to-maintain overall frame structure. The adjustable infrared touch frame structure provided by this invention has advantages such as reasonable structural design, strong adaptability, and convenient installation and maintenance. It is particularly suitable for touch application scenarios such as multi-model interactive devices, display terminals, or all-in-one TVs, and has good prospects for widespread application.

[0032] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any changes or substitutions conceived without inventive effort should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope defined in the claims.

Claims

1. A frame structure for an adjustable infrared touch frame, characterized in that, Includes the main frame (1) and multiple TV bracket mounts (2); The frame body (1) and the TV bracket hanger (2) are connected by a sliding structure, thereby realizing the connection of the TV bracket hanger (2); The main frame (1) includes longitudinal bars (3) at both ends and transverse bars (4) on both sides. The interior of the longitudinal bars (3) and transverse bars (4) is provided with three BTB flexible connecting wires (5), and the BTB flexible connecting wires (5) are connected to each other through an adapter plate (11) to form a C-shaped structure, thereby achieving the effect of conductive connection.

2. The frame structure of the adjustable infrared touch frame according to claim 1, characterized in that: The sliding structure includes a horizontal bar (4) above the frame body (1), a sliding groove (8) on the vertical bars (3) on both sides, and a slider (9) on the TV bracket mount (2); The slider (9) is slidably disposed in the groove (8) and positioned by means of screws, thus making it suitable for different television sets.

3. The frame structure of the adjustable infrared touch frame according to claim 1, characterized in that: It also includes a connecting block (6), and both ends of the connecting block (6) are provided with inserts (12), and the inserts (12) are respectively inserted into the grooves (8) of the crossbar (4) and the longitudinal bar (3), thereby realizing the assembly and fixation between the longitudinal bar (3) and the crossbar (4).

4. The frame structure of the adjustable infrared touch frame according to claim 1, characterized in that: A connecting shell (7) is provided at the notch between the longitudinal rod (3) and the transverse rod (4), and the notch between the longitudinal rod (3) and the transverse rod (4) is covered by the connecting shell (7) to form a whole.

5. The frame structure of the adjustable infrared touch frame according to claim 1, characterized in that: The longitudinal bars (3) and transverse bars (4) of the frame body (1) are made of profile tubes or plastic tubes, the connecting blocks (6) are made of zinc alloy, and the connecting shells (7) are made of plastic.